4.7 Article

Comparison of Mechanical Properties of PMMA Disks for Digitally Designed Dentures

Journal

POLYMERS
Volume 13, Issue 11, Pages -

Publisher

MDPI
DOI: 10.3390/polym13111745

Keywords

CAD; CAM; denture base; flexural strength; discoloration; water sorption; solubility; PMMA

Funding

  1. DGSHAPE Japan

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This study evaluated the physical properties of a custom block, a commercially available CAD/CAM PMMA disk, and a heat-polymerizing resin through three different tests. The results showed that the custom block had higher flexural modulus and water solubility compared to the PMMA disk, but had higher water sorption and discoloration. The manufacturing method significantly affected the mechanical properties of the materials.
In this study, the physical properties of a custom block manufactured using a self-polymerizing resin (Custom-block), the commercially available CAD/CAM PMMA disk (PMMA-disk), and a heat-polymerizing resin (Conventional PMMA) were evaluated via three different tests. The Custom-block was polymerized by pouring the self-polymerizing resin into a special tray, and Conventional PMMA was polymerized with a heat-curing method, according to the manufacturer's recommended procedure. The specimens of each group were subjected to three-point bending, water sorption and solubility, and staining tests. The results showed that the materials met the requirements of the ISO standards in all tests, except for the staining tests. The highest flexural strength was exhibited by the PMMA-disk, followed by the Custom-block and the Conventional PMMA, and a significant difference was observed in the flexural strengths of all the materials (p < 0.001). The Custom-block showed a significantly higher flexural modulus and water solubility. The water sorption and discoloration of the Custom-block were significantly higher than those of the PMMA-disk, but not significantly different from those of the Conventional PMMA. In conclusion, the mechanical properties of the three materials differed depending on the manufacturing method, which considerably affected their flexural strength, flexural modulus, water sorption and solubility, and discoloration.

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